ELUCID IV: Galaxy Quenching and its Relation to Halo Mass, Environment, and Assembly Bias
arXiv:1707.09002 · doi:10.3847/1538-4357/aa9e01
Abstract
We examine the quenched fraction of central and satellite galaxies as a function of galaxy stellar mass, halo mass, and the matter density of their large scale environment. Matter densities are inferred from our ELUCID simulation, a constrained simulation of local Universe sampled by SDSS, while halo masses and central/satellite classification are taken from the galaxy group catalog of Yang et al. The quenched fraction for the total population increases systematically with the three quantities. We find that the `environmental quenching efficiency', which quantifies the quenched fraction as function of halo mass, is independent of stellar mass. And this independence is the origin of the stellar mass-independence of density-based quenching efficiency, found in previous studies. Considering centrals and satellites separately, we find that the two populations follow similar correlations of quenching efficiency with halo mass and stellar mass, suggesting that they have experienced similar quenching processes in their host halo. We demonstrate that satellite quenching alone cannot account for the environmental quenching efficiency of the total galaxy population and the difference between the two populations found previously mainly arises from the fact that centrals and satellites of the same stellar mass reside, on average, in halos of different mass. After removing these halo-mass and stellar-mass effects, there remains a weak, but significant, residual dependence on environmental density, which is eliminated when halo assembly bias is taken into account. Our results therefore indicate that halo mass is the prime environmental parameter that regulates the quenching of both centrals and satellites.
21 pages, 16 figures, submitted to ApJ
References in corpus (30)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- The Importance of Satellite Quenching for the Build-Up of the Red Sequence of Present Day Galaxies
- Bimodal gas accretion in the Horizon-MareNostrum galaxy formation simulation
- On the prevalence of radio-loud AGN in brightest cluster galaxies: implications for AGN heating of cooling flows
- Towards a Concordant Model of Halo Occupation Statistics
- Natural Downsizing in Hierarchical Galaxy Formation
- Bulge mass is king: The dominant role of the bulge in determining the fraction of passive galaxies in the Sloan Digital Sky Survey
- Dependence of Galaxy Quenching on Halo Mass and Distance from its Centre
- Environmental Effects on Satellite Galaxies: The Link Between Concentration, Size and Colour Profile
- The dependence of dark halo clustering on the formation epoch and the concentration parameter
- On Halo Formation Times and Assembly Bias
- ELUCID - Exploring the Local Universe with reConstructed Initial Density field I: Hamiltonian Markov Chain Monte Carlo Method with Particle Mesh Dynamics
- ELUCID - Exploring the Local Universe with reConstructed Initial Density field III: Constrained Simulation in the SDSS Volume
- Two Conditions for Galaxy Quenching: Compact Centres and Massive Haloes
- The impact of galactic properties and environment on the quenching of central and satellite galaxies: A comparison between SDSS, Illustris and L-Galaxies
- SDSS-IV MaNGA: environmental dependence of stellar age and metallicity gradients in nearby galaxies
- The influence of the environmental history on quenching star formation in a CDM universe
- Environmental Dependence of Cold Dark Matter Halo Formation
- Galaxy environment in the 3D-HST fields. Witnessing the onset of satellite quenching at z ~ 1-2
- Quenching of Star Formation in SDSS Groups: Centrals, Satellites, and Galactic Conformity
- Assessing Colour-dependent Occupation Statistics Inferred from Galaxy Group Catalogues
- Central and Satellite Colors in Galaxy Groups: A Comparison of the Halo Model and SDSS Group Catalogs
- Star Formation and Stellar Mass Assembly in Dark Matter Halos: From Giants to Dwarfs
- Mapping the real space distributions of galaxies in SDSS DR7: I. Two Point Correlation Functions
- The Differing Relationships Between Size, Mass, Metallicity and Core Velocity Dispersion of Central and Satellite Galaxies
- Testing galaxy formation models with galaxy stellar mass functions
Cited by in corpus (32)
- Spectroscopic Confirmation of a Protocluster at with a High Fraction of Quiescent Galaxies
- On the Elevation and Suppression of Star Formation within Galaxies
- The Fornax3D project: Assembly histories of lenticular galaxies from a combined dynamical and population orbital analysis
- The morphological transformation and the quenching of galaxies
- What to expect from dynamical modelling of cluster haloes II. Investigating dynamical state indicators with Random Forest
- Quenching in Cosmic Sheets: Tracing the Impact of Large Scale Structure Collapse on the Evolution of Dwarf Galaxies
- SDSS-IV MaNGA: Environmental dependence of the Mgb/<Fe>-sigma_* relation for nearby galaxies
- Groups and protocluster candidates in the CLAUDS and HSC-SSP joint deep surveys
- Dissect two-halo galactic conformity effect for central galaxies: The dependence of star formation activities on the large-scale environment
- CSST large-scale structure analysis pipeline: I. constructing reference mock galaxy redshift surveys
- The Dearth of Difference between Central and Satellite Galaxies III. Environmental Dependence of Mass-Size and Mass-Structure Relations
- MaNGA 8313-1901: gas accretion observed in a blue compact dwarf galaxy?
- How the Galaxy-Halo Connection Depends on Large-Scale Environment
- Relating galaxies across different redshift to study galaxy evolution
- Quenching in the Right Place at the Right Time: Tracing the Shared History of Starbursts, AGNs, and Post-starburst Galaxies Using Their Structures and Multiscale Environments
- Connection between galaxy morphology and dark-matter halo structure I: a running threshold for thin discs and size predictors from the dark sector
- Star formation history and transition epoch of cluster galaxies based on the Horizon-AGN simulation
- SDSS-IV MaNGA: The effect of stellar mass and halo mass on the assembly histories of satellite galaxies
- An Empirical Determination of the Dependence of the Circumgalactic Mass Cooling Rate and Feedback Mass Loading Factor on Galactic Stellar Mass
- MOSEL and IllustrisTNG: Massive Extended Galaxies at z=2 Quench Later Than Normal-size Galaxies
- Galaxy-halo size relation from Sloan Digital Sky Survey Data Release 7 and the ELUCID simulation
- Finding proto-clusters to trace galaxy evolution: I. The finder and its performance
- Statistical properties of filaments in the cosmic web
- Galaxy and halo properties around cosmic filaments from Sloan Digital Sky Survey Data Release 7 and the ELUCID simulation
- Evaluating the origins of the secondary bias based on the correlation of halo properties with the linear density field
- The EDGE-CALIFA survey: The effect of active galactic nucleus feedback on the integrated properties of galaxies at different stages of their evolution
- Environmental effects on associations of dwarf galaxies
- The origin of galaxy colour bimodality in the scatter of the Stellar-to-Halo Mass Relation
- The galaxy-environment connection revealed by constrained simulations
- COMAP Pathfinder -- Season 2 results IV. A stack on eBOSS/DESI quasars
- ELUCID-DESI I: A Parallel MPI Implementation of the Initial Condition Solver for Large-Scale Reconstruction Simulations
- On the quenching of star formation in observed and simulated central galaxies: Evidence for the role of integrated AGN feedback